• 제목/요약/키워드: Al Alloy Anode

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해양환경중에서 A1-합금희생양극에 의한 음극방식특성 (A Study on the Characteristics of Cathodic Protection by Al-Alloy Sacrificial Anode in Marine Environment)

  • 이연호
    • 수산해양기술연구
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    • 제28권1호
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    • pp.53-60
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    • 1992
  • In this study, cathodic protection experiment was carried out by Al-alloy sacrificial anode in marine environments which have specific resistance($\rho$) if 25~7000$\Omega$.cm and investigated protection potential, current density and loss rate of Al-alloy sacrificial anode. The main results resistance($\rho$) of 400$\Omega$.cm, the cathodic protection potential appears high about-720 mV(SCE). But below specific resistance($\rho$) of 300$\Omega$.cm, the cathodic protection potential appears low about-770 mV(SCE) and simultaneously, cathode is protected sufficiently. 2) The loss rate of Al-Alloy sacrificial anode became large with decreasing specific resistance and increasing the ratio(A sub(c)/A sub(a) of bared surface area of anode and cathode. 3) The loss rate of Al-alloy sacrificial anode(w) to the mean current density of anode(i) is as follows. w=ai+b (a, b : experimental constants)

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전기방식시 적용되는 희생양극의 성능개발에 대한 연구 (A Study on the Sacrificial Anode for Imparting High Capabilities to Cathodic Protection)

  • 김성종
    • 수산해양기술연구
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    • 제34권1호
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    • pp.37-42
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    • 1998
  • Al alloy anode is mostly used for protecting marine structures such as pier steel piles and ship's body. Recently it has been reported that the life of Al alloy anode has been shortened significantly than the original design life. It is suggested that the suspected reasons for this problem mentioned above seems to be the improper protection design of alloy of anode on sea water regardless of environmental facotrs such as flow rate, temperature, contamination degree etc. However there is few paper about to the sea water contamination degree affecting to the life of Al alloy anode. In this study, the property of Al alloy anode was investigated as a parameter of sea water contamination degree such as variation of pH 2, 4, 6, 8, 10 and each sea port's contaminated waters.

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해양환경 변화가 알루미늄합금 희생양극의 효율에 미치는 영향에 관한 연구 (A Study on the Influence of Al Alloy Sacrificial Anode Efficiency due to Marine Environmental Variation)

  • 김도형
    • 한국해양공학회지
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    • 제14권2호
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    • pp.106-111
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    • 2000
  • Recently it was reported that the life of Al Sacrifical anode is being used in port piers has been significantly shortened compared with the original design life (e.g. average life shortened from 20 years to 13-15 year) Those factors involving these problems mentioned above were seemed to be a quality of anode material and diverse environmental factors such as pH flow rate temperature Dissolved oxygen Chemical oxygen demand and resistivity etcm In this study flow rate and contamination degree(pH) of sea water affecting to sacrificial anode life hve been investigated in terms of electrochemical characteristics of Al alloy sacrificial anode It was known that the lifetime of Al alloy anode was shortened not only by increasing of self-corrosion quantity by varying flow rate of sea water but also by increasing corrosion current density due to the potential difference increment between Al anode and steel structure cathode by varying contamination degree of sea water. Especially when anode current density is from 1mA/cm2 to 3mA/cm2 and flow rate of sea water is under 2m/s anode current efficiency is 90% above However flow rate is over 2m/s anode current efficiency fell down sharply due to erosion corrosion as well as galvanic corrosion.

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해양환경 중에서 SS400강재의 간극부식방지 특성에 관한 연구 (Study on the Characteristics of Crevice Corrosion Prevention of SS 400 in Marine Environment)

  • 임우조;정기철;구영필;윤병두
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2001년도 춘계학술대회 논문집
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    • pp.152-157
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    • 2001
  • This paper was studied on the characteristics of crevice corrosion prevention of SS 400 in marine environment. In NaCl solution, polarization behavior under the crevice corrosion was investigated. And Weight loss rate of SS 400 applied cathodic protection and non cathodic protection was measured according to the NaCl concentration. The main results obtained are as follows : The weight loss rate of Al-alloy galvanic anode was increased as the concentration of NaCl solution increased by 3.5% but the concentration increased over 3.5%, that of Al-alloy galvanic anode become decreased. The protective potential of SS 400 used Al-alloy galvanic anode becomes more cathodic polarization with increasing concentration of NaCl solution. Effects of oxygen on the weight loss rate of Al-alloy sacrificial anode for cathodic protection as the concentration of 3.5% NaCl solution become sensitive than that of 0% NaCl solution.

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CORROSION BEHAVIOR OF Al-Zn ALLOY AS A SACRIFICIAL ANODE OF ORV TUBES

  • Jin, Huh;Lee, Ho-Kyun;Lee, Jae-Ho
    • 한국표면공학회지
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    • 제32권3호
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    • pp.452-455
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    • 1999
  • ORV which vaporizes LNG to NG is consisted of tube and header whose substrate is aluminum alloy. The corrosion of the tube is very severe because of sea water being used as the heating source. In this research to protect ORV substrate material, the corrosion behavior of aluminum alloys was investigated for the sacrificial role of Al-Zn alloy for ORV tubes. The electrochemical behavior of aluminum alloys in sea water was investigated. The corrosion behavior of thermally-sprayed and cladded samples were compared through salt spray tests. Al-Zn alloy can act as a sacrificial anode and cladded Al-Zn alloy has a better corrosion resistance than that of thermally sprayed one. The galvanic effect of Al-Zn to substrate material was conformed from scratched sample tests.

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배관 방식용 접지전지 설계를 위한 유전양극의 특성에 관한 연구 (Galvanic Anode Charactristics of Grounding Cell Design for Corrosion Protection of Pipings)

  • 임우조
    • 수산해양기술연구
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    • 제19권1호
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    • pp.57-62
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    • 1983
  • 접지전지 설계를 위한 Zn, Al 및 Mg의 합급양극의 특성을 실험적으로 조사한 결과를 다음과 같이 요약할 수 있다. 1. 환경비저항 1000 $\Omega$.cm 이하에서는 Zn합금양극이, 1000 $\Omega$.cm 이상에서는 Mg합금양극이 접지전지 설계에 좋다. 2. 비저항 500 $\Omega$.cm 이하에서는 Al합금양극이 Mg 합금양극보다 접지전지 설계를 위한 유전양극 특성이 좋으나 모든 비저항에서 Zn합금양극보다 특성이 떨어진다. 3. 배유전유밀도가 급격히 증가하는 일정인가전압은 다음과 같다. \circled1 E 하(Zn)=log (4.9465/$\rho$상(0.0639))+11$\times$10 상(-6)$\rho$상(0.8923i) \circled2 E 하(Al)=log (4.9306/$\rho$상(0.0525))+13$\times$10 상(-6)$\rho$상(0.9314i) \circled3 E 하(Mg)= log (3.7086/$\rho$상(0.0988))+181$\times$10 상(-6)$\rho$상(0.5406i) 4. 유전양극의 종류 및 환경의 비저항에 따라 인가전압과 배유전유밀도의 관계는 다음과 같은 일반식으로 표시할 수 있다. logi=g+root(n.E+r)

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저순도 Al지금을 사용한 Al-Zn-In-Mg계 Al합금 유전양극의 특성에 관한 연구 (A study of galvanic characteristics of aluminium alloy anode in the Al-Zn-In-Mg system made of the low purity aluminium ingot)

  • 김원녕;김기준;김영대
    • Journal of Advanced Marine Engineering and Technology
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    • 제9권3호
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    • pp.240-249
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    • 1985
  • This paper presents the results of the galvanic anode's characteristicsin the Al-Zn-In-Mg and Al-Zn-In-Mg system anodes used aluminium ingot of low purity, 99.5% grade. The results of thses performance tests are as follows: 1) Zn, In and Mg are an available elements to improve the performance of Aluminium alloy anodes. 2) When the range of zinc content in the Al-Zn-In-Mg system anode is 2-5% the more zinc content, the more improve the anode performance. 3) Al-Zn-In-Mg system anode requires a long term over 50 days for the performance test. 4) The composition of Al-Zn-In-Mg system anode which shows the most excellent performance is Al-(2-3%) Zn-(0.02%) In-(1.0%) Mg. 5) When the Al-Zn-In-Mg system anode is annealed for an hour in 500 to 550 .deg. C, the anode performance is improved. 6) The lower average potential and the better corrosion pattern in the Al-Zn-Mg, Al-Zn-In and Al-Zn-In-Mg system anodes, the more current efficiency is improved.

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대용량 저온 Ni-Al 합금 분말 제조 공정 개발 (Development of Large-scale Ni-Al Alloy Fabrication Process at Low Temperature)

  • 이민재;강민구;장성철;함형철;안중우;남석우;윤성필;한종희
    • 한국수소및신에너지학회논문집
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    • 제29권1호
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    • pp.64-70
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    • 2018
  • In this study, the kg-class Ni-Al alloy fabrication process at low temperature was developed from the physical mixture of Ni and Al powders. The AlCl3 as an activator was used to reduce the temperature of alloy synthesis below the melting temperature of Ni and Al elements (<$500^{\circ}C$). Mixed phase of Ni3Al intermetallic and Ni-Al solid-solution were identified in the XRD pattern analysis. Furthermore, from the analysis of SEM and particle size analyzer, we found that the particle size of synthesized alloy powders was not changed compared to the initial size of Ni particle after the formation of alloy powder at $500^{\circ}C$. In the creep test, the anode (which was fabricated by the prepared Ni-Al alloy powders in this study) displayed the enhanced creep resistance compared to the conventional anode.

용융탄산염 연료전지용 in-situ 소결된 Ni-Al 합금 연료극 개발 (Development of in-situ Sintered Ni-Al Alloy Anode for Molten Carbonate Fuel Cell)

  • 천현아;윤성필;한종희;남석우;임태훈
    • 전기화학회지
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    • 제9권3호
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    • pp.124-131
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    • 2006
  • 기존의 용융탄산염 연료전지용 연료극인 Ni-Cr전극은 제조과정이 복잡하며, 운전조건에서 전극의 소결과 creep현상으로 인하여 전극의 기공률과 두께가 감소하는 문제점이 있어 상용화에 걸림돌이 되고 있다. 이에 본 연구에서는 Ni-Cr계 전극보다 creep저항성이 우수하다고 알려져 있는 Ni-Al계 합금을 사용하였다. 또한 공정의 단순화로 비용을 절감시키기 위해, 소성과정을 제외하고 tape casting과 건조과정을 거친 green sheet를 단위전지에 장착하여 전처리 과정 중에 소결시키는 in-situ 소결법에 대해 연구하였다. 그러나 기존의 전처리 방법을 이용한 단위전지 평가에서 Ni-Al 합금의 상분리 현상으로 인해 기대하였던 creep저항성 향상을 확인하지 못했고, 운전중 Ni-Al합금 연료극에 단위전지의 구성요소인 matrix 기공크기보다 작은 기공(${\leq}0.4{\mu}m$)이 다량 생성되어 전해질 재분배를 일으켜 성능이 하락하는 문제점이 나타났다. 따라서 이러한 문제점을 해결하고자 전처리 조건을 변화시키며 실험을 수행하였다. 그 결과, 비활성 기체인 질소를 일정한 구간에 사용함으로써 기존 전처리에서 발생하였던 Ni-Al 합금의 상분리 현상을 억제할 수 있었으며 이로 인해 creep저항성 또한 향상시킬 수 있었다. 그러나 운전 중 생성되는 matrix기공크기보다 작은 기공(${\leq}0.4{\mu}m$) 형성비율은 억제할 수 없었다. 위의 전처리 조건을 가지고 단위전지 운전실험을 하였고, 전해질 함침비율을 조절함에 따라 성능을 향상시킬 수 있었으며 2000시간 동안 일정하게 유지함을 확인하였다. 이로부터 기존의 소성전극과 비교하여 많은 장점을 가지고 있는 in-situ 소결법의 가능성을 확인할 수 있었다.

액체급랭응고법으로 제조된 리튬 이차전지 음극활물질용 Si50Al30Fe20 비정질 합금의 결정화 거동 및 전기화학적 특성 (Crystallization Behavior and Electrochemical Properties of Si50Al30Fe20 Amorphous Alloys as Anode for Lithium Secondary Batteries Prepared by Rapidly Solidification Process)

  • 서덕호;김향연;김성수
    • 한국전기전자재료학회논문지
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    • 제32권4호
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    • pp.341-348
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    • 2019
  • This paper reports the microstructure and electrochemical properties of Si-Al-Fe ternary amorphous alloys prepared by rapid solidification as an anode for lithium secondary batteries. The microstructure was analyzed using XRD and HR-TEM with EDS mapping. In accordance with DSC analysis, annealing was performed to crystallize the active nano-Si in the amorphous alloy. Thus, nano-Si forms (~80 nm) embedded in the matrix alloy, such as $Fe_2Al_3Si_3$, $FeSi_2$, and $Fe_{0.42}Si_{2.67}$, were successfully synthesized. The electrode based on the Si-Al-Fe ternary alloy delivered an initial discharge capacity of approximately $700mAh^{g-1}$, and exhibited a high Coulombic efficiency of 99.0~99.6% from the $2^{nd}$ to $70^{th}$ cycles.